Recently, Fujitsu Laboratories, a subsidiary of Japan ’s Fujitsu, has developed a next-generation innovative user interaction interface. This interface can recognize the user ’s fingers and finger operations, as well as text and pictures, which can be generated on real objects (books, newspapers, etc.) Operation experience similar to touch screen.

"We think that paper and other objects can be touch-operated like a touch screen. This system is not suitable for any special hardware equipment, just a common camera plus a common projector. All functions The realization of all depends on the image processing technology developed by Fujitsu. "Through this image processing technology, users can select text on paper and books with their fingers. After these words are recognized, a text file will be generated and stored in the computer. Interact with the content above.

This technology uses the camera to measure the shape of real-world objects, and then automatically adjusts the focal length of the camera to accurately identify the object to match the projection of the projector. The user can perform operations such as touch and selection under the camera. In the video at the end of the article, we can also see that this system also has certain multimedia functions.

"So far, desktop computers and other devices have been equipped with gesture recognition function. But the interactive interface we developed does not control the operating system, but a real object."

To our surprise, the resolution of the camera used in this system is only 320X180. It is understood that the reason for using such a low resolution is that the touch operation of the finger can be more accurately recognized. In the system, the finger only occupies 1 pixel, as long as the finger moves and lifts 1 cm, it can be recognized, so the accuracy is relatively high. Sometimes it doesn't have to be very high resolution, sometimes "blur is precise".

In addition, in some cases that do not require touch, this system also supports gesture operations. In the video below, you can see the demonstration of the 3D CAD operation by the demonstrator. A spokesperson for Fujitsu Laboratories said that such a function can be used on service desks and information desks to provide more detailed information for travelers and tourists.

The current version is for demonstration purposes only and is not commercially available. According to the plan of Fujitsu Laboratories, Fujitsu will launch a more practical and cheap version for public use in 2014.

The Anomatic series of high-quality deep drawn Aluminum Canisters is designed to be compatible with your chosen valves, Actuators and drug formulations.  Our deep drawing process ensures a consistent side wall thickness using high strength aluminum which is far superior to other forming methods.  The aluminum is work hardened during the deep draw process and the surface mechanically polished providing a smooth, hard internal finish suitable for use with both CFC and HFA propellants.  

Our standard canister sizes are 10ml, 14ml and 19ml, with customized sizes available. Our canisters are also available in anodized and plasma coated finishes. 

Why Anomatic

Headquartered in New Albany, Ohio (USA), Anomatic is the world`s leading supplier of anodized aluminum solutions and offers:

· U.S. and Asia based manufacturing

· State-of-the-art facilities

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· cGMP compliant and ISO14001 and ISO9001 certified

· Advanced surface treatment options

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Anomatic's patented continuous anodizing process creates a smooth, uniform anodized finish that completely covers the inside of the canister, providing a protective barrier for many sensitive formulations.

Aluminum anodization is an electrochemical process that enhances the strength, durability, and appearance of aluminum.  When aluminum is oxidized, super-strong oxide (anodic) layers [grow" on the surface of the metal. These new layers are highly resistant to wear and corrosion.

The exacting part to part consistency achieved with our unique anodizing system cannot be obtained with conventional hoist line systems.  Conventional anodizing systems present parts with varied coating thicknesses and voids formed due to air pocketing. 

A consistent uniform 6 µm anodic film thicknesses will protect  certain drug formulations and the canister from degradation.   Heavier film thicknesses of up to 12µm can be provided to meet your more demanding application.

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